2Carraseosa A L, Bustos M J, Galindo I, et al. Virus-specific cell receptors are necessary, but not sufficient to confer cell susceptibility to African swine fever virus [J]. Virology, 1999, 144: 1309-1321.
3Galindo I, Vinuela E, Carrascosa A L. Proteins cell receptors mediate the saturable interaction of African swine fever virus proteins p12 with the surface of permissive cells [J]. Virus Res, 1997, 49: 193-204.
4Rodriguez I, Nogal M L, Bustos M J, et al. The African swine fever virus virion membrane protein pE248R is required for virus infectivity and an early postentry event [J]. Virology, 2009, 83: 12290-12300.
5Gomez-Puertas P, Rodriguez F, Oviedo J M, et al. Neutralizing antibodies to different proteins of African swine fever virus inhibit both virus attachment and internalization [J]. Virology, 1996, 70: 5689-5694.
6Hemaez B, Alonso C. Dynamin-and Clathrin-dependent endocytosis in African swine fever virus entry [J]. Virology, 2010, 84: 2100-2109.
7Valdeira M L, Geraldes A. Morphological study on the entry of African swine fever virus into cells [J], Biol Cell, 1985, 55: 35-40.
8Eulalio A, Nunes-Correia I, Salas J, et al. African swine fever virus p37 structural protein is localized in nuclear foci containing the viral DNA at early post-infection times [J]. Virus Res, 2007, 130: 18-27.
9Brun A, Rivas C, Esteban M. African swine fever virus gene A179L, a viral homologue of bcl-2, protects cells from programmed cell death [J]. Virology, 1996, 225: 227-230.
10Nogal M L, Gonzalez G, Rodriguez C, et al. African swine fever virus IAP homologue inhibits caspase activation and promotes cell survival in mammalian cells [J]. Virology, 2001,75 (6): 2535-2543.